Jafari, Rahim

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Name Variants
Jafarı, Rahım
Jafari,R.
J.,Rahim
R.,Jafari
Rahim, Jafari
Jafari, Rahim
R., Jafari
J., Rahim
Jafari,R.
R.,Jafari
Jafari, Rahim
J.,Rahim
Rahim, Jafari
Job Title
Doçent Doktor
Email Address
rahim.jafari@atilim.edu.tr
Main Affiliation
Automotive Engineering
Status
Former Staff
Website
ORCID ID
Scopus Author ID
Turkish CoHE Profile ID
Google Scholar ID
WoS Researcher ID

Sustainable Development Goals

14

LIFE BELOW WATER
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0

Research Products

2

ZERO HUNGER
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0

Research Products

11

SUSTAINABLE CITIES AND COMMUNITIES
SUSTAINABLE CITIES AND COMMUNITIES Logo

2

Research Products

1

NO POVERTY
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0

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12

RESPONSIBLE CONSUMPTION AND PRODUCTION
RESPONSIBLE CONSUMPTION AND PRODUCTION Logo

0

Research Products

7

AFFORDABLE AND CLEAN ENERGY
AFFORDABLE AND CLEAN ENERGY Logo

5

Research Products

5

GENDER EQUALITY
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0

Research Products

3

GOOD HEALTH AND WELL-BEING
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2

Research Products

9

INDUSTRY, INNOVATION AND INFRASTRUCTURE
INDUSTRY, INNOVATION AND INFRASTRUCTURE Logo

3

Research Products

13

CLIMATE ACTION
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0

Research Products

6

CLEAN WATER AND SANITATION
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0

Research Products

10

REDUCED INEQUALITIES
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0

Research Products

4

QUALITY EDUCATION
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0

Research Products

15

LIFE ON LAND
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0

Research Products

16

PEACE, JUSTICE AND STRONG INSTITUTIONS
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0

Research Products

17

PARTNERSHIPS FOR THE GOALS
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0

Research Products

8

DECENT WORK AND ECONOMIC GROWTH
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0

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This researcher does not have a Scopus ID.
This researcher does not have a WoS ID.
Scholarly Output

13

Articles

8

Views / Downloads

5/0

Supervised MSc Theses

2

Supervised PhD Theses

1

WoS Citation Count

117

Scopus Citation Count

145

WoS h-index

6

Scopus h-index

6

Patents

0

Projects

0

WoS Citations per Publication

9.00

Scopus Citations per Publication

11.15

Open Access Source

3

Supervised Theses

3

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JournalCount
Case Studies in Thermal Engineering1
Energy and Buildings1
Experimental Thermal and Fluid Science1
IICETA 2022 - 5th International Conference on Engineering Technology and its Applications -- 5th International Conference on Engineering Technology and its Applications, IICETA 2022 -- 31 May 2022 through 1 June 2022 -- Al-Najaf -- 1832641
International Advanced Researches and Engineering Journal1
Current Page: 1 / 2

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  • Doctoral Thesis
    Aşırı Kalabalık Alanların Enerji Performansının İyileştirilmesi için Termal Konfor, Iaq Endeksleri ve Termal Enerji Depolamasının Deneysel Değerlendirmesi ve Çalışması
    (2022) Al-malakı, Fadhıl Asaad Mohammed Kadhım; Jafarı, Rahım; Al-saedi, Hasanen M.
    In recent years, buildings, including prison halls, have contributed significantly to the world's rising energy use, with 34 % of the energy used by these buildings being attributed to cooling and heating. This study examines the use new combination of phase change materials (PCMs) for energy conservation in buildings through thermal storage, including the use of double layers of PCMs paraffin waxes with different properties. The study evaluates the indoor air quality characteristics of two protocols for cooling and heating in four different scenarios that are classified according to the seasons in a location, with a high daily temperature range, similar to that of Iraq. An experimental facility for the study was designed, constructed, and tested at Technology University in Baghdad. The experimental measurements were taken in a small-scale model 1:4 of a prison quarry, with dimensions of 1.2 by 0.6 by 0.8 meters and a side inlet grill. This prototype model was used to investigate the impact of integrating double layers of panels on the roof of the space and their ability to minimize fluctuations, energy usage, and shift peak load. The computational work involved solving the partial differential equation for the conservation of mass, momentum, and energy and its rate of dissipation using the finite volume technique. Modifications to the algorithm were made to simulate the space with and without PCMs in the roof for all scenarios. The majority of the computed data were presented as temperature contours and other thermal contours, and when compared to the experimental results, a reasonable level of agreement was observed. The use of PCMs as latent heat thermal energy storage (LHTES) in the room envelope for passive cooling has gained significant attention due to their ability to store large amounts of energy. The results of this study show that the use of TES can reduce the energy required for the space by 47.2 % in the summer and in varying proportions during other seasons, also when PCMs are used in hot weather, in door temperature drops by 7 °C at average, compared to when they are not used.